126 lines
4.6 KiB
Nix
126 lines
4.6 KiB
Nix
{ lib }:
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let inherit (lib.attrsets) mapAttrs; in
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rec {
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doubles = import ./doubles.nix { inherit lib; };
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forMeta = import ./for-meta.nix { inherit lib; };
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parse = import ./parse.nix { inherit lib; };
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inspect = import ./inspect.nix { inherit lib; };
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platforms = import ./platforms.nix { inherit lib; };
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examples = import ./examples.nix { inherit lib; };
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# Elaborate a `localSystem` or `crossSystem` so that it contains everything
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# necessary.
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#
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# `parsed` is inferred from args, both because there are two options with one
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# clearly prefered, and to prevent cycles. A simpler fixed point where the RHS
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# always just used `final.*` would fail on both counts.
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elaborate = args: let
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final = {
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# Prefer to parse `config` as it is strictly more informative.
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parsed = parse.mkSystemFromString (if args ? config then args.config else args.system);
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# Either of these can be losslessly-extracted from `parsed` iff parsing succeeds.
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system = parse.doubleFromSystem final.parsed;
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config = parse.tripleFromSystem final.parsed;
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# Just a guess, based on `system`
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platform = platforms.selectBySystem final.system;
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# Determine whether we are compatible with the provided CPU
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isCompatible = platform: parse.isCompatible final.parsed.cpu platform.parsed.cpu;
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# Derived meta-data
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libc =
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/**/ if final.isDarwin then "libSystem"
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else if final.isMinGW then "msvcrt"
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else if final.isMusl then "musl"
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else if final.isUClibc then "uclibc"
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else if final.isAndroid then "bionic"
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else if final.isLinux /* default */ then "glibc"
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else if final.isMsp430 then "newlib"
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else if final.isAvr then "avrlibc"
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else if final.isNetBSD then "nblibc"
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# TODO(@Ericson2314) think more about other operating systems
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else "native/impure";
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extensions = {
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sharedLibrary =
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/**/ if final.isDarwin then ".dylib"
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else if final.isWindows then ".dll"
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else ".so";
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executable =
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/**/ if final.isWindows then ".exe"
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else "";
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};
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# Misc boolean options
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useAndroidPrebuilt = false;
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useiOSPrebuilt = false;
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# Output from uname
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uname = {
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# uname -s
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system = {
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"linux" = "Linux";
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"windows" = "Windows";
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"darwin" = "Darwin";
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"netbsd" = "NetBSD";
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"freebsd" = "FreeBSD";
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"openbsd" = "OpenBSD";
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"wasm" = "Wasm";
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}.${final.parsed.kernel.name} or null;
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# uname -p
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processor = final.parsed.cpu.name;
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# uname -r
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release = null;
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};
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qemuArch =
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if final.isArm then "arm"
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else if final.isx86_64 then "x86_64"
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else if final.isx86 then "i386"
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else {
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"powerpc" = "ppc";
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"powerpc64" = "ppc64";
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"powerpc64le" = "ppc64";
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"mips64" = "mips";
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"mipsel64" = "mipsel";
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}.${final.parsed.cpu.name} or final.parsed.cpu.name;
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emulator = pkgs: let
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qemu-user = pkgs.qemu.override {
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smartcardSupport = false;
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spiceSupport = false;
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openGLSupport = false;
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virglSupport = false;
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vncSupport = false;
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gtkSupport = false;
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sdlSupport = false;
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pulseSupport = false;
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smbdSupport = false;
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seccompSupport = false;
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hostCpuTargets = ["${final.qemuArch}-linux-user"];
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};
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wine-name = "wine${toString final.parsed.cpu.bits}";
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wine = (pkgs.winePackagesFor wine-name).minimal;
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in
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if final.parsed.kernel.name == pkgs.stdenv.hostPlatform.parsed.kernel.name &&
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pkgs.stdenv.hostPlatform.isCompatible final
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then "${pkgs.runtimeShell} -c"
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else if final.isWindows
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then "${wine}/bin/${wine-name}"
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else if final.isLinux && pkgs.stdenv.hostPlatform.isLinux
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then "${qemu-user}/bin/qemu-${final.qemuArch}"
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else if final.isWasm
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then "${pkgs.v8}/bin/d8"
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else throw "Don't know how to run ${final.config} executables.";
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} // mapAttrs (n: v: v final.parsed) inspect.predicates
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// args;
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in assert final.useAndroidPrebuilt -> final.isAndroid;
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assert lib.foldl
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(pass: { assertion, message }:
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if assertion final
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then pass
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else throw message)
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true
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(final.parsed.abi.assertions or []);
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final;
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}
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